Interfacial Redox-Driven Crystallization on MXene Enables Ultrasensitive Hg2+ Detection.

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Bibliographic Details
Title: Interfacial Redox-Driven Crystallization on MXene Enables Ultrasensitive Hg2+ Detection.
Authors: Sun J; Department of Physics, School of Science and Technology, Nottingham Trent University, Nottingham NG11 8NS,United Kingdom., Jiang H; Department of Physics, School of Science and Technology, Nottingham Trent University, Nottingham NG11 8NS,United Kingdom., Chavan KJ; Department of Physics, School of Science and Technology, Nottingham Trent University, Nottingham NG11 8NS,United Kingdom., Afolayan JS; Department of Chemistry, School of Science and Technology, Nottingham Trent University, Nottingham NG11 8NS,United Kingdom., Perry CC; Department of Chemistry, School of Science and Technology, Nottingham Trent University, Nottingham NG11 8NS,United Kingdom., Chen X; Department of Physics, School of Science and Technology, Nottingham Trent University, Nottingham NG11 8NS,United Kingdom.
Source: ACS applied materials & interfaces [ACS Appl Mater Interfaces] 2026 Jun 24; Vol. 18 (24), pp. 34515-34524. Date of Electronic Publication: 2026 Jun 10.
Publication Type: Journal Article
Journal Info: Publisher: American Chemical Society Country of Publication: United States NLM ID: 101504991 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1944-8252 (Electronic) Linking ISSN: 19448244 NLM ISO Abbreviation: ACS Appl Mater Interfaces Subsets: MEDLINE; PubMed not MEDLINE
Database: MEDLINE Ultimate
Description
ISSN:1944-8252
DOI:10.1021/acsami.6c05126